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利用场发射扫描电子显微镜揭示正常木质部导管和压缩木质部导管的最内层表面的超微结构。

Ultrastructure of the innermost surface of differentiating normal and compression wood tracheids as revealed by field emission scanning electron microscopy.

机构信息

Laboratory of Tree Cell Biology, Graduate School of Agriculture, Kyoto University, Kyoto 606-8502, Japan.

出版信息

Planta. 2012 Jun;235(6):1209-19. doi: 10.1007/s00425-011-1569-7. Epub 2011 Dec 16.

DOI:10.1007/s00425-011-1569-7
PMID:22173277
Abstract

The ultrastructure of the innermost surface of Cryptomeria japonica differentiating normal wood (NW) and compression wood (CW) was comparatively investigated by field emission electron microscopy (FE-SEM) combined with enzymatic degradation of hemicelluloses. Cellulose microfibril (CMF) bundles were readily observed in NW tracheids in the early stage of secondary cell wall formation, but not in CW tracheids because of the heavy accumulation of amorphous materials composed mainly of galactans and lignin. This result suggests that the ultrastructural deposition of cell wall components in the tracheid cell wall differ between NW and CW from the early stage of secondary cell wall formation. Delignified NW and CW tracheids showed similar structural changes during differentiating stages after xylanase or β-mannanase treatment, whereas they exhibited clear differences in ultrastructure in mature stages. Although thin CMF bundles were exposed in both delignified mature NW and CW tracheids by xylanase treatment, ultrastructural changes following β-mannanase treatment were only observed in CW tracheids. CW tracheids also showed different degradation patterns between xylanase and β-mannanase. CMF bundles showed a smooth surface in delignified mature CW tracheids treated with xylanase, whereas they had an uneven surface in delignified mature CW tracheids treated with β-mannanase, indicating that the uneven surface of CMF bundles was related to xylans. The present results suggest that ultrastructural deposition and organization of lignin and hemicelluloses in CW tracheids may differ from those of NW tracheids.

摘要

采用场发射电子显微镜(FE-SEM)结合半纤维素酶解的方法,比较研究了日本柳杉正常木材(NW)和压缩木材(CW)的最内层表面的超微结构。在次生细胞壁形成的早期阶段,NW 管胞中可以容易地观察到纤维素微纤维(CMF)束,但 CW 管胞中由于主要由半乳糖和木质素组成的无定形物质的大量积累而没有观察到 CMF 束。这一结果表明,在次生细胞壁形成的早期阶段,NW 和 CW 管胞细胞壁的细胞壁成分的超微结构沉积就有所不同。木质素去除的 NW 和 CW 管胞在用木聚糖酶或β-甘露聚糖酶处理后的分化阶段表现出相似的结构变化,而在用成熟阶段则表现出明显的差异。尽管在木聚糖酶处理的木质素去除的成熟 NW 和 CW 管胞中都暴露出了薄的 CMF 束,但只有在 CW 管胞中观察到β-甘露聚糖酶处理后的超微结构变化。CW 管胞在用木聚糖酶和β-甘露聚糖酶处理时也表现出不同的降解模式。在用木聚糖酶处理的木质素去除的成熟 CW 管胞中,CMF 束的表面光滑,而在用β-甘露聚糖酶处理的木质素去除的成熟 CW 管胞中,CMF 束的表面则不均匀,表明 CMF 束的不均匀表面与木聚糖有关。这些结果表明,CW 管胞中木质素和半纤维素的超微结构沉积和组织可能与 NW 管胞不同。

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本文引用的文献

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2
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Planta. 2010 Jun;232(1):109-19. doi: 10.1007/s00425-010-1152-7. Epub 2010 Apr 8.
3
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Protoplasma. 2002 Feb;219(1-2):106-15. doi: 10.1007/s007090200011.
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